一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
英文原题:HER2-specific synthetic antigen receptor T cell therapy synergizes with radiotherapy to provide improved antitumor efficacy in non-small cell lung cancer.
HER2-specific synthetic antigen receptor T cell therapy synergizes with radiotherapy to provide improved antitumor efficacy in non-small cell lung cancer.
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在非小细胞肺癌(NSCLC)中,放疗不仅介导细胞毒性,还激活HER2等放射抵抗驱动因子。我们在NSCLC模型中研究了放疗联合HER2靶向T细胞治疗。在表达HER2的A549异种移植瘤中,评估了放疗与表达靶向HER2的DAP12相关合成抗原受体(SAR)的工程化T细胞的抗肿瘤疗效。通过免疫印迹、实时定量聚合酶链反应、流式细胞术、RNA-seq和免疫组织化学评估了HER2调控、转录调节和肿瘤T细胞浸润。高剂量HER2-SAR T细胞输注消除了A549肿瘤生长,但诱导了移植物抗宿主病。低剂量T细胞输注耐受良好,并提供了部分肿瘤抑制。诱导放疗(T细胞输注前7天)协同改善了肿瘤控制和生存。放疗短暂上调HER2表达(4至24小时),但在此窗口内给予HER2-SAR T细胞并未增强抗肿瘤疗效。放疗在体外未增强T细胞介导的细胞毒性。
然而,在肿瘤中,放疗增加了HER2-SAR T细胞的瘤内增殖和积累,并增强了外源性凋亡通路,包括诱导Fas转录本和蛋白水平以及cleaved caspase-3(CC3)。照射肿瘤的RNA-seq显示持久的转录重编程,免疫激活增加,增殖和致癌信号减少。诱导放疗增强HER2-SAR T细胞浸润并提供协同肿瘤抑制,可能通过额外激活免疫介导的凋亡。这些发现支持在表达HER2的NSCLC中进一步评估HER2-SAR T细胞治疗。
In non-small cell lung cancer (NSCLC), radiotherapy not only mediates cytotoxicity but also activates radioresistance drivers like HER2.
We investigated radiotherapy combined with HER2-targeted T cell therapy in an NSCLC model. The antitumor efficacy of radiotherapy and engineered T cells expressing a DAP12-associated synthetic antigen receptor (SAR) targeting HER2 was evaluated in HER2-expressing A549 xenografts. HER2 modulation, transcriptional regulation, and tumor T cell infiltration were assessed using immunoblotting, real-time quantitative polymerase chain reaction, flow cytometry, RNA-seq, and immunohistochemistry.
High-dose HER2-SAR T cell infusion abolished A549 tumor growth but induced graft-vs-host disease. Low-dose T cell infusion was well-tolerated and provided partial tumor inhibition. Induction radiotherapy (7 d before T cell infusion) synergistically improved tumor control and survival. Radiotherapy transiently upregulated HER2 expression (4 to 24 h), though administering HER2-SAR T cells within this window did not enhance antitumor efficacy. Radiation did not enhance T cell-mediated cytotoxicity in vitro.
However, in tumors, radiotherapy increased intratumoral proliferation and accumulation of HER2-SAR T cells and enhanced the extrinsic apoptotic pathway, including induction of Fas transcript and protein levels and cleaved caspase-3 (CC3).
RNA-seq of irradiated tumors revealed lasting transcriptional reprogramming with increased immune activation and decreased proliferation and oncogenic signaling. Induction radiotherapy enhances HER2-SAR T cell infiltration and provides synergistic tumor suppression, likely through additional activation of immune-mediated apoptosis.
These findings support further assessment of HER2-SAR T cell therapy in HER2-expressing NSCLC.
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